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Assessing Cellular Target Engagement by SHP2 (PTPN11) Phosphatase Inhibitors
Published on: July 17, 2020
Target-specific control of lymphoid-specific protein tyrosine phosphatase (Lyp) activity
Zandra E Walton1, Anthony C Bishop
1Amherst College, Department of Chemistry, Amherst, MA 01002, United States.
Abstract:
Lymphoid-specific protein tyrosine phosphatase (Lyp), a member of the protein tyrosine phosphatase (PTP) superfamily of enzymes, is an important mediator of human-leukocyte signaling. Lyp has also emerged as a potential anti-autoimmune therapeutic target, owing to the association of a Lyp-activating mutation with an array of autoimmune disorders. Toward the goal of generating a selective inhibitor of Lyp activity that could be used for investigating Lyp's roles in cell signaling and autoimmune-disease progression, here we report that Lyp's PTP domain can be readily sensitized to target-specific inhibition by a cell-permeable small molecule. Insertion of a tetracysteine-motif-containing peptide at a conserved position in Lyp's catalytic domain generated a mutant enzyme (Lyp-CCPGCC) that retains activity comparable to that of wild-type Lyp in the absence of added ligand. Upon addition of a tetracysteine-targeting biarsenical compound (FlAsH), however, the activity of the Lyp-CCPGCC drops dramatically, as assayed with either small-molecule or phosphorylated-peptide PTP substrates. We show that FlAsH-induced Lyp-CCPGCC inhibition is potent, specific, rapid, and independent of the nature of the PTP substrate used in the inhibition assay. Moreover, we show that FlAsH can be used to specifically target overexpressed Lyp-CCPGCC in a complex proteomic mixture. Since the mammalian-cell permeability of FlAsH is well established, it is likely that FlAsH-mediated inhibition of Lyp-CCPGCC will be useful for specifically targeting Lyp activity in engineered leukocytes and autoimmune-disease models.
Insights
Researchers developed a novel method to inhibit Lymphoid-specific protein tyrosine phosphatase (Lyp) activity using a small molecule. This engineered Lyp enzyme (Lyp-CCPGCC) can be selectively turned off by FlAsH, offering a new tool for studying Lyp in cell signaling and autoimmune diseases.
Area of Science:
- Biochemistry
- Immunology
- Molecular Biology
Background:
- Lymphoid-specific protein tyrosine phosphatase (Lyp) is crucial for human-leukocyte signaling.
- Lyp is implicated in autoimmune disorders, making it a potential therapeutic target.
Purpose of the Study:
- To develop a selective inhibitor for Lyp activity.
- To create a tool for investigating Lyp's role in cell signaling and autoimmune disease progression.
Main Methods:
- Engineered a mutant Lyp enzyme (Lyp-CCPGCC) with a tetracysteine motif insertion.
- Utilized a cell-permeable biarsenical compound (FlAsH) to target and inhibit Lyp-CCPGCC.
- Assayed inhibition using small-molecule and phosphorylated-peptide PTP substrates.
Main Results:
- Lyp-CCPGCC retained wild-type activity without FlAsH.
- FlAsH addition caused potent, specific, and rapid inhibition of Lyp-CCPGCC activity.
- FlAsH specifically targeted overexpressed Lyp-CCPGCC in complex mixtures.
Conclusions:
- FlAsH-mediated inhibition of Lyp-CCPGCC is a potent and specific method.
- This approach is likely useful for targeting Lyp activity in engineered cells and autoimmune models.

